CN206921651U - A kind of transformer of integrated form based on electromagnetic induction technology - Google Patents
A kind of transformer of integrated form based on electromagnetic induction technology Download PDFInfo
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- CN206921651U CN206921651U CN201720568168.1U CN201720568168U CN206921651U CN 206921651 U CN206921651 U CN 206921651U CN 201720568168 U CN201720568168 U CN 201720568168U CN 206921651 U CN206921651 U CN 206921651U
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Abstract
The utility model discloses a kind of transformer of integrated form based on electromagnetic induction technology,Including insulating protective layer,First conduction iron core,Core insulating tube,Insulation fill stratum,First induction coil,Second conduction iron core,Conducting electrode,Second induction coil,3rd induction coil,4th induction coil and induction coil connector,The main part of transformer of the integrated form based on electromagnetic induction technology is designed as the first conduction iron core,String has the first induction coil on the first conduction iron core,Second induction coil,3rd induction coil and the 4th induction coil,The induction coil outer layer covers have insulating protective layer,Insulation fill stratum is filled between the induction coil,The induction coil is internally provided with the second conduction iron core,Induction coil connector is provided between the induction coil,Transformer device structure of the utility model integrated form based on electromagnetic induction technology is simple,It is easy to operate,Use the induction coil of integrated form,So that the efficiency of reactor greatly improves.
Description
Technical field
The utility model belongs to transformer technology field, and in particular to a kind of transformation of integrated form based on electromagnetic induction technology
Device.
Background technology
In summer, user uses air-conditioning, and because the load of air-conditioning is larger so that transformer in switchgear house it is negative
Load rate persistently raises, and summer temperature is higher in addition, and this just brings certain hidden danger, prior art to the safe and stable operation of power network
In, the equipment such as transformer, switch cubicle are set in switchgear house.At present, solution to the problems described above is that operator on duty periodically patrols
Depending on the actual temperature according to the inside of transformer takes cooling measure (such as turning on the aircondition), still, by relevant staff couple
The site inspection of the switchgear house of partial high pressure client, it is found that the temperature in the temperature and switchgear house in transformer is universal higher, lead to
Cross and set air-conditioning equipment to efficiently control the temperature in transformer in switchgear house, and then efficiently control the temperature in switchgear house
Degree, but air-conditioning equipment is with high costs, applies and shows slightly luxurious in switchgear house, due to operator on duty's working level and sense of responsibility
It is not high, and Electricity customers consider operating cost, it is impossible to the temperature in regulation transformer in time, and then can not be in time in switchgear house
Temperature, it is easy to cause Accident of Transformer, then influence power supply.
In traditional design scheme, integrated iron core uses grain-oriented Si steel sheet, along with the low saturation magnetic induction of orientation silicon steel
Limitation, the close Bm of actual magnetic of reactor is than relatively low, so the linearity of product is poor (general 1.2 times), the volume of product, again
Measure bigger, cost is higher, the reactor made of orientation silicon steel, is primarily adapted for use in low frequency field, only has to low-order harmonic
Obvious effect, when higher hamonic wave or high-frequency direct-current component in circuit system be present, the filtering of orientation silicon steel reactor
DeGrain, and noise is easily produced, iron core column heating is very high, power attenuation increase, the transformation made of orientation silicon steel
Device, in manufacturing process, major part is low by the operation of manual lamination, complex process, production efficiency.
The processing method of grain-oriented Si steel sheet is typically by the way of monolithic punching press at present, and the burr of silicon steel sheet is bigger, piece
Inevitable scale error between piece be present, along with transformer manufacturing process, by the way of manual lamination, finally
The block iron core uneven thickness being processed into, cause transformer air gap height it is unstable so that the performance of transformer is consistent
Property is poor.
Utility model content
The purpose of this utility model is to provide a kind of transformer of integrated form based on electromagnetic induction technology, above-mentioned to solve
The problem of being proposed in background technology.
To realize the utility model purpose, the technical scheme of use is:A kind of change of integrated form based on electromagnetic induction technology
Depressor, including insulating protective layer, the first conduction iron core, core insulating tube, insulation fill stratum, the first induction coil, the second conduction
Iron core, conducting electrode, the second induction coil, the 3rd induction coil, the 4th induction coil and induction coil connector, it is described integrated
The main part of transformer of the formula based on electromagnetic induction technology is designed as the first conduction iron core, and being gone here and there on the first conduction iron core has
First induction coil, the second induction coil, the 3rd induction coil and the 4th induction coil, the induction coil outer layer covers have absolutely
Edge protective layer, insulation fill stratum is filled between the induction coil, the induction coil is internally provided with the second conduction iron core,
Induction coil connector is provided between the induction coil.
Preferably, the cored insulating barrier of outer wrap of the first conduction iron core.
Preferably, the insulating protective layer and core insulating tube are specifically made up of a kind of polyvinyl chloride material, insulation protection
The thickness of layer and core insulating tube is 2~4mm.
Preferably, the insulation fill stratum is specifically made up of a kind of special cermacis material, the thickness of insulation fill stratum and sense
Answer the diameter of coil identical.
Preferably, first induction coil, the second induction coil, the 3rd induction coil and the 4th induction coil is effective
Diameter design is 8~15cm, and thickness is designed as 5~8cm.
Preferably, inside first induction coil, the second induction coil, the 3rd induction coil and the 4th induction coil
Induction coil and the second conduction iron core are staggeredly superimposed, and the number of plies is 8~10 layers.
Preferably, the conducting electrode is arranged on the upper end of the first induction coil and the 3rd induction coil, conducting electrode with
The end of a thread connection of induction coil.
Preferably, first induction coil and the second induction coil are designed as main coil, the 3rd induction coil and the 4th
Induction coil is designed as secondary coil, and induction coil connector connects the first induction coil and the second induction coil and connection the 3rd
Induction coil and the 4th induction coil.
Compared with prior art, the beneficial effects of the utility model are:The utility model integrated form is based on electromagnetic induction skill
The transformer of art, including insulating protective layer, the first conduction iron core, core insulating tube, insulation fill stratum, the first induction coil, the
Two conduction iron cores, conducting electrode, the second induction coil, the 3rd induction coil, the 4th induction coil and induction coil connector, its
In, insulating protective layer, the first conduction iron core, core insulating tube, insulation fill stratum, the first induction coil, the second conduction iron core, biography
Conductive electrode, the second induction coil, the 3rd induction coil, the 4th induction coil and induction coil connector cooperative cooperating so that this
Utility model has simple in construction, convenient disassembly, and external form is compact attractive in appearance, and floor space is small, and operating cost is cheap, and stable performance makes
With reliable so that transformer caloric value is small, and Stability Analysis of Structures, technique is easy to assembly, it also avoid meaningless power consumption, improves work
Efficiency and production efficiency.
Brief description of the drawings
Fig. 1 is transformer overlooking the structure diagram of the utility model integrated form based on electromagnetic induction technology.
Fig. 2 is transformer side structure schematic view of the utility model integrated form based on electromagnetic induction technology.
In figure:1st, insulating protective layer;2nd, the first conduction iron core;3rd, core insulating tube;4th, insulation fill stratum;6th, the first sensing
Coil;7th, the second conduction iron core;8th, conducting electrode;9th, the second induction coil;10th, the 3rd induction coil;11st, the 4th line of induction
Circle;12nd, induction coil connector.
Embodiment
Below in conjunction with the accompanying drawing in the utility model embodiment, the technical scheme in the embodiment of the utility model is carried out
Clearly and completely describing, it is clear that described embodiment is only the utility model part of the embodiment, rather than whole
Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are not under the premise of creative work is made
The every other embodiment obtained, belong to the scope of the utility model protection.
Refer to shown in Fig. 1-2, the utility model provides a kind of technical scheme:A kind of integrated form is based on electromagnetic induction technology
Transformer, including insulating protective layer 1, first conduct iron core 2, core insulating tube 3, insulation fill stratum 4, the first induction coil 6,
Second conduction iron core 7, conducting electrode 8, the second induction coil 9, the 3rd induction coil 10, the 4th induction coil 11 and induction coil
Connector 12, the main part of transformer of the integrated form based on electromagnetic induction technology is designed as the first conduction iron core 2, described
String has the first induction coil 6, the second induction coil 9, the 3rd induction coil 10 and the 4th induction coil on first conduction iron core 2
11, the induction coil outer layer covers have insulating protective layer 1, and insulation fill stratum 4, the sense are filled between the induction coil
Answer coil inside to be provided with the second conduction iron core 7, induction coil connector 12 is provided between the induction coil.
Operation principle:In use, first assembling transformer, two conducting electrodes 8 on the first induction coil 6 are connected,
Alternating current produces alternating magnetic field by the first induction coil 6 and the second induction coil 9, and alternating magnetic field conducts iron core 7 second
Conducted with inside the first conduction iron core 2, alternating magnetic field is conducted to the 3rd induction coil 10 and the 4th induction coil 11, the
Three induction coils 10 and the 4th induction coil 11 produce the alternating magnetic field after transformation.
Further, the cored insulating barrier 3 of outer wrap of the first conduction iron core 2.
Further, the insulating protective layer 1 and core insulating tube 3 are specifically made up of a kind of polyvinyl chloride material, insulation
The thickness of protective layer 1 and core insulating tube 3 is 2~4mm.
Further, the insulation fill stratum 4 is specifically made up of a kind of special cermacis material, the thickness of insulation fill stratum 4
It is identical with the diameter of induction coil.
Further, first induction coil 6, the second induction coil 9, the 3rd induction coil 10 and the 4th induction coil
11 effective diameter is designed as 8~15cm, and thickness is designed as 5~8cm.
Further, first induction coil 6, the second induction coil 9, the 3rd induction coil 10 and the 4th induction coil
Induction coil and the second conduction iron core 7 inside 11 are staggeredly superimposed, and the number of plies is 8~10 layers.
Further, the conducting electrode 8 is arranged on the upper end of the first induction coil 6 and the 3rd induction coil 10, conduction
Electrode 8 is connected with the end of a thread of induction coil.
Further, the induction coil 9 of the first induction coil 6 and second is designed as main coil, the 3rd induction coil 10
Secondary coil is designed as with the 4th induction coil 11, induction coil connector 12 connects the first induction coil 6 and the second induction coil 9
And the 3rd induction coil 10 of connection and the 4th induction coil 11.
While there has been shown and described that embodiment of the present utility model, for the ordinary skill in the art,
It is appreciated that these embodiments can be carried out with a variety of changes in the case where not departing from principle of the present utility model and spirit, repaiied
Change, replace and modification, the scope of the utility model are defined by the appended claims and the equivalents thereof.
Claims (8)
1. a kind of transformer of integrated form based on electromagnetic induction technology, including insulating protective layer(1), first conduction iron core(2), iron
Core insulation layer(3), insulation fill stratum(4), the first induction coil(6), second conduction iron core(7), conducting electrode(8), second sense
Answer coil(9), the 3rd induction coil(10), the 4th induction coil(11)With induction coil connector(12), it is characterised in that:Institute
The main part for stating transformer of the integrated form based on electromagnetic induction technology is designed as the first conduction iron core(2), first conduction
Iron core(2)Upper string has the first induction coil(6), the second induction coil(9), the 3rd induction coil(10)With the 4th induction coil
(11), the induction coil outer layer covers have insulating protective layer(1), insulation fill stratum is filled between the induction coil(4),
The induction coil is internally provided with the second conduction iron core(7), induction coil connector is provided between the induction coil
(12).
A kind of 2. transformer of integrated form based on electromagnetic induction technology according to claim 1, it is characterised in that:Described
One conduction iron core(2)The cored insulating barrier of outer wrap(3).
A kind of 3. transformer of integrated form based on electromagnetic induction technology according to claim 1, it is characterised in that:It is described exhausted
Edge protective layer(1)And core insulating tube(3)Specifically it is made up of a kind of polyvinyl chloride material, insulating protective layer(1)And core insulation
Layer(3)Thickness be 2~4mm.
A kind of 4. transformer of integrated form based on electromagnetic induction technology according to claim 1, it is characterised in that:It is described exhausted
Edge packed layer(4)Specifically it is made up of a kind of special cermacis material, insulation fill stratum(4)Thickness and induction coil diameter phase
Together.
A kind of 5. transformer of integrated form based on electromagnetic induction technology according to claim 1, it is characterised in that:Described
One induction coil(6), the second induction coil(9), the 3rd induction coil(10)With the 4th induction coil(11)Effective diameter set
8~15cm is calculated as, thickness is designed as 5~8cm.
A kind of 6. transformer of integrated form based on electromagnetic induction technology according to claim 1, it is characterised in that:Described
One induction coil(6), the second induction coil(9), the 3rd induction coil(10)With the 4th induction coil(11)The internal line of induction
Circle and the second conduction iron core(7)Staggeredly it is superimposed, the number of plies is 8~10 layers.
A kind of 7. transformer of integrated form based on electromagnetic induction technology according to claim 1, it is characterised in that:The biography
Conductive electrode(8)It is arranged on the first induction coil(6)With the 3rd induction coil(10)Upper end, conducting electrode(8)With induction coil
The end of a thread connection.
A kind of 8. transformer of integrated form based on electromagnetic induction technology according to claim 1, it is characterised in that:Described
One induction coil(6)With the second induction coil(9)It is designed as main coil, the 3rd induction coil(10)With the 4th induction coil(11)
It is designed as secondary coil, induction coil connector(12)Connect the first induction coil(6)With the second induction coil(9)And connection the
Three induction coils(10)With the 4th induction coil(11).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720568168.1U CN206921651U (en) | 2017-05-22 | 2017-05-22 | A kind of transformer of integrated form based on electromagnetic induction technology |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720568168.1U CN206921651U (en) | 2017-05-22 | 2017-05-22 | A kind of transformer of integrated form based on electromagnetic induction technology |
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Publication Number | Publication Date |
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CN206921651U true CN206921651U (en) | 2018-01-23 |
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CN201720568168.1U Active CN206921651U (en) | 2017-05-22 | 2017-05-22 | A kind of transformer of integrated form based on electromagnetic induction technology |
Country Status (1)
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CN (1) | CN206921651U (en) |
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2017
- 2017-05-22 CN CN201720568168.1U patent/CN206921651U/en active Active
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TR01 | Transfer of patent right |
Effective date of registration: 20210916 Address after: 311200 Building 1, No. 68, guagang East Road, Guali Town, Xiaoshan District, Hangzhou City, Zhejiang Province Patentee after: Hangzhou Zhuosheng Electric Co.,Ltd. Address before: 311115 No. 1, Yunhua Road, Pingyao Town, Yuhang District, Hangzhou City, Zhejiang Province Patentee before: HANGZHOU NENGFANG ELECTRIC Co.,Ltd. |
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TR01 | Transfer of patent right |